Skip to main content

TriMet and PGE use wind to power e-buses in Portland

Authorities in Oregon, US, are embracing wind power as a means of meeting transport emissions commitments. TriMet (Tri-County Metropolitan Transportation District of Oregon) has joined forces with Portland General Electric (PGE) to power its all-electric buses with wind energy. TriMet says the move supports its ambition to run a non-diesel fleet by 2040. Maria Pope, PGE president, says: "This all-electric bus line is a sustainable transportation option for the community and another step closer to a cle
April 25, 2019 Read time: 2 mins

Authorities in Oregon, US, are embracing wind power as a means of meeting transport emissions commitments.

1272 TriMet (Tri-County Metropolitan Transportation District of Oregon) has joined forces with 1067 Portland General Electric (PGE) to power its all-electric buses with wind energy.

TriMet says the move supports its ambition to run a non-diesel fleet by 2040.

Maria Pope, PGE president, says: "This all-electric bus line is a sustainable transportation option for the community and another step closer to a clean energy future for Oregon.”

The New Flyer Xcelsior Charge bus will join four matching e-buses which will operate on TriMet Line 62-Murray Boulevard in Washington County.

Four e-buses were funded by a $3.4 million grant from the Federal Transit Administration (FTA) Low and No Emission Vehicle Deployment programme while the fifth vehicle was purchased by TriMet and PGE. In August 2018, TriMet received a second FTA grant which will provide five additional e-buses.

The company says the buses have electric motors powered by energy stored in the rechargeable battery packs and will reduce emissions by around 75 tonnes per year compared to its eight diesel-hybrid buses.

According to TriMet, regenerative braking allows the vehicle to capture kinetic energy as it slows, which can then be used or stored in the battery for later use.

The buses are equipped with low-floor boarding and extension ramp, climate control and seating for up to 40 people.

Over the next five to six years, TriMet intends to purchase up to 80 more e-buses with $53m in funds generated by the Keep Oregon Moving Act. These vehicles will be tested in hilly terrain and local traffic conditions as TriMet will evaluate the performance, cost and reliability of the service.

For more information on companies in this article

Related Content

  • Brooklyn eyes Bogota’s BRT system
    June 17, 2016
    David Crawford considers the increased interest in bus rapid transit and looks that the latest trends. Bus rapid transit (BRT) is gaining an increasingly high profile in the US public transport agenda, for two main reasons. One is the potential for ‘trains on wheels’ to save substantially on installation costs as compared with other modes such as underground metros or light-rail transit. Another, highlighted in the case of New York City, is the value of having a rapid surface-based alternative available whe
  • Stepped speed limits improve workzone congestion and safety
    January 30, 2012
    Traffic flow has been improved, congestion eased and safety increased - by a system of 'stepped speed limits' introduced to UK roadworks. URS Scott Wilson principal consultant Jamie Uff reports
  • Insight into China's smart cities initiatives
    April 25, 2013
    Schneider Electric, which has been playing an active role in smart transportation systems in China since 1990, provides an insight into smart city initiatives in the country. Today, most cities across the world are facing unprecedented growth, which questions the viability of the current development model. They are immersed in a competition with each other, both domestically and internationally, in terms of investments, jobs and talents. Cities need to become more attractive and intelligent by becoming more
  • Contact lens technology could offer alternative to battery power storage
    December 7, 2016
    Research by UK organisations the University of Surrey and Augmented Optics, in collaboration with the University of Bristol, has developed technology which could revolutionise the capabilities of appliances that have previously relied on battery power to work. It could also revolutionise electric cars, allowing the possibility for them to recharge as quickly a regular non-electric car refuels with petrol, instead of the current process which takes approximately 6-8 hours. They believe the development by